首页> 外文会议>ASME international conference on energy sustainability >COMPARATIVE ANALYSIS OF DIESEL, DIESEL-PALM BIODIESEL AND DIESEL-BIODIESEL-BUTANOL BLENDS IN DIESEL ENGINE
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COMPARATIVE ANALYSIS OF DIESEL, DIESEL-PALM BIODIESEL AND DIESEL-BIODIESEL-BUTANOL BLENDS IN DIESEL ENGINE

机译:柴油发动机中的柴油,柴油-棕榈生物柴油和柴油-生物柴油-丁二醇混合物的比较分析

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To reduce the dependency on fossil-based energy resources, the utilization of renewable fuels in unmodified diesel engines is gaining more emphasis from researchers in the recent years. The aim of the current study is to take part in the efforts being made to this regard by experimentally investigating a compression ignition engine fueled with different fuels ((diesel, diesel-biodiesel (B20), and diesel-biodiesel-butanol (BU20)) for their performance and emissions comparison. The experimental study was conducted in a water cooled single-cylinder direct injection (DI) diesel engine. It was operated at a constant engine operation speed of 1800 rpm and under varied engine load conditions. It is found that BU20 shows promising results in terms of performance and emissions characteristics as compared to using B20 and D100. Butanol addition to diesel-biodiesel blends is considered as an appropriate solution of higher density and viscosity the blend and thus for the sustainable usability of biodiesel. Maximum thermal efficiency improvement of 3.18% was observed at an engine load of 75%. The NO_x emission was improved with BU20 as compared to the conventional diesel fuel (D100) at most of the engine loads. As an improvement on the engine performance and emissions is reported from the current study, the BU20 fuel blends can be used in similar engines with no further engine retrofitting. This blend can be a good environmental friendly fuel that can serve in the reduction of fossil-based diesel fuels. A further study on diesel engine tribology is required.
机译:为了减少对基于化石的能源的依赖,近年来,研究人员越来越重视未改性柴油机中可再生燃料的利用。本研究的目的是通过实验研究以不同燃料(柴油,生物柴油(B20)和生物柴油丁醇(BU20))为燃料的压缩点火发动机,从而为此做出努力。在水冷单缸直喷(DI)柴油发动机上进行了实验研究,该发动机在1800 rpm的恒定发动机运行速度和变化的发动机负载条件下运行。与使用B20和D100相比,BU20在性能和排放特性方面显示出令人鼓舞的结果,将丁醇添加到柴油-生物柴油混合物中被认为是较高密度和粘度混合物的合适解决方案,因此对于生物柴油的可持续可用性而言。在75%的发动机负载下,发动机的效率提高了3.18%。与传统的柴油燃料相比,BU20的NO_x排放得以改善(D10 0)在大多数发动机负载下。根据本研究报告,随着发动机性能和排放的改善,BU20混合燃料可用于类似发动机,而无需进行进一步的发动机改装。这种混合物可以是一种良好的环保燃料,可减少化石柴油的使用。需要对柴油机的摩擦学进行进一步的研究。

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